Examveda

A solid sphere of radius R carries a uniform volume charge density $$\rho $$ . The magnitude of electric field inside the sphere at a distance r from the centre is

A. $$\frac{{r\rho }}{{3{\varepsilon _0}}}$$

B. $$\frac{{R\rho }}{{3{\varepsilon _0}}}$$

C. $$\frac{{{R^2}\rho }}{{r{\varepsilon _0}}}$$

D. $$\frac{{{R^3}\rho }}{{{r^2}{\varepsilon _0}}}$$

Answer: Option A


This Question Belongs to Engineering Physics >> Electromagnetic Theory

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Which one of the following current densities, $$\overrightarrow {\bf{J}} $$ can generate the magnetic vector potential $$\overrightarrow {\bf{A}} = \left( {{y^2}{\bf{\hat i}} + {x^2}{\bf{\hat j}}} \right)?$$

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